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Updated: Sep 11, 2025

Design of Solid-State Fermentation Systems for Polymer Hydrolytic Extracellular Enzyme Production by Filamentous Fungi
Published on: June 6, 2025
Evaluation of the application effect of surface immobilization technology on fuel ethanol production at industrial
Qingguo Liu1, Caice Liang2, Alan Yan3
1College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing, China; Nanjing Hi-Tech Biological Technology Research Institute Co.,Ltd., Nanjing, China.
Abstract:
This study evaluates the viability of surface immobilization method for ethanol production utilizing a 3400 m3 bioreactor. The reactor's agitation mechanism, featuring an integrated suspended carrier, was optimized by computational fluid dynamics (CFD) simulation, succeeded by a quantitative assessment of the fluid field distribution. A second intermittent fermentation experiment was performed in the optimized reactor, utilizing high-concentration maize hydrolysate as the substrate. The findings indicate that the immobilized-cell reactor provides superior space efficiency and remarkable fermentation stability. In comparison to the current continuous fermentation outcomes of free-cell systems, the average alcohol concentration and productivity increased by 0.63 % (v/v) and 14.29 %, respectively, and maize consumption per ton of ethanol decreased by 4.62 %. This study represents the inaugural notable economic advantage derived from the implementation of ICF without seed in a 3,400 m3 fermentation tank, showcasing considerable potential for industrial utilization.

